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Publication Date:
June 2005
ISSN:
1437-4331
DOI:
10.1515/CCLM.2003.072

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Clinical Chemistry and Laboratory Medicine (CCLM)

Published in Association with the International Federation of Clinical Chemistry and Laboratory Medicine and the European Federation of Clinical Chemistry and Laboratory Medicine

Editor-in-Chief: Plebani, Mario

Editorial Board Member: Lippi, Giuseppe / Gillery, Philippe / Kazmierczak, Steven / Lackner, Karl J. / Melichar, Bohuslav / Siest, Gérard / Whitfield, John B. / Abi Fadel, Marianne / Alvarez Menendez, Francisco V. / Azzazy, Hassan M.E. / Diamandis, Eleftherios P. / Eckardstein, Arnold / Favaloro, Emmanuel J. / Griesmacher, Andrea / Herrmann, Wolfgang / Hoffmann, Johannes J.M.L. / Hooijkaas, Herbert / Ichihara, Kiyoshi / Kaabachi, Naziha / Kim, Jeong-Ho / Korte, Wolfgang / Kroupis, Christos / Lai, Leslie Charles / Lam, Wai Kei Christopher / Marc, Janja / Miyoshi, Eiji / Özben, Tomris / Palicka, Vladimir / Panteghini, Mauro / Queralto, Jose M. / Scartezini, Marileia / Simundic, Ana-Maria / Tsongalis, Gregory J. / Wallemacq, Pierre E. / Yan, Shengkai / Young, Ian S. / Chiu, Rossa Wai Kwun / Ghosh, Debabrata / Kappelmayer, Janos / Lehmann, Sylvain / Sypniewska, Grazyna

12 Issues per year

Increased IMPACT FACTOR 2011: 2.150
Rank 10 out of 32 in category Medical Laboratory Technology in the 2011 Thomson Reuters Journal Citation Report/Science Edition

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Comparison of Standard PCR and the LightCycler® Technique to Determine the Thrombophilic Mutations: An Efficiency and Cost Study

Brigitte Schroell-Metzger / Mario Dicato / Manon Bosseler / Guy Berchem

Citation Information: Clinical Chemistry and Laboratory Medicine. Volume 41, Issue 4, Pages 482–485, ISSN (Print) 1434-6621, DOI: 10.1515/CCLM.2003.072, June 2005

Publication History:
Published Online:
2005-06-01

Abstract

For several years it has been possible to routinely detect numerous mutations in the human genome by different methods. The most common technique is a standard PCR, but real time fluorescence PCR is increasingly being used. The purpose of this paper is to compare these two different techniques from the point of view of reliability, time consumption, and cost. More than 600 DNA samples of prevalence studies and from cancer patients were used to determine mutations in the genes of coagulation factor V Leiden, prothrombin, and methylenetetrahydrofolate reductase using standard PCR. A subset of 132 samples from the same pool was also tested by LightCycler PCR for the same coagulation gene mutations. Originally LightCycler techniques were applied for quantitative PCR by real time fluorescence measuring. Adding a melting curve analysis allows mutation detection. The results were perfectly concordant. The cost for the reagents is nearly the same for both methods but the time consumption for standard PCR is much higher than for the LightCycler method, resulting in higher laboratory personnel costs.

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